olve the given differential equation as shown below: (Pe2y – x)dx = 2e2Y (e2y + Px)dy ® Incy(e* – y²) = 2yPtan-1(x~'e?yry 4x tan-

Advanced Engineering Mathematics
10th Edition
ISBN:9780470458365
Author:Erwin Kreyszig
Publisher:Erwin Kreyszig
Chapter2: Second-order Linear Odes
Section: Chapter Questions
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DIFFERENTIAL EQUATION

Solve the given differential equation as shown below:
(Pe2y – x)dx = 2e2"(e2y + Px)dy
@ Incy(e** – y²) = 2yPtan-(x-e2yy
®Inc(e** + 2y²) = 2xPtan¬(-x=te2y
© Inc(e*y – x²) = 2yPtan-(-y¬te2xy
O Incx(e*y + y²) = 2Ptan-1(-x-1e?»y
Inc(e*y – 2x) :
2Ptan-1(x-'e²yy"
® Inc(e*y + x²)
2Ptan-(-x-'e23j
Transcribed Image Text:Solve the given differential equation as shown below: (Pe2y – x)dx = 2e2"(e2y + Px)dy @ Incy(e** – y²) = 2yPtan-(x-e2yy ®Inc(e** + 2y²) = 2xPtan¬(-x=te2y © Inc(e*y – x²) = 2yPtan-(-y¬te2xy O Incx(e*y + y²) = 2Ptan-1(-x-1e?»y Inc(e*y – 2x) : 2Ptan-1(x-'e²yy" ® Inc(e*y + x²) 2Ptan-(-x-'e23j
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